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Study on Pyrolysis Behavior of Yttrium Oxalate and Kinetic of Yttria Grain Grown

机译:钇草酸盐和钇籽粒的热解作用的研究

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The precursor of yttria was prepared by yttrium nitrate and ammonium oxalate in water solution. Pyrolysis behavior of the precursor and the characterization of yttria phase transformation were studied through thermoanalysis. The grain growth kinetic behavior of yttria nanopowders was investigated by the X-ray powder diffraction (XRD) result of the powders obtained through roasting the precursor. Pattern of the yttria powders and agglomeration of its grain were measured by means of SEM and laser particle size analysis methods. The results suggested that cubic crystal phase yttria could be obtained by sample calcination for 1 h under 823 K. When the precursor was calcined under conditions of temperature ranging from 823 K to 1173 K, yttria grain ranging 7 nm ~ 16 nm could be obtained ,with grain growth exponent of n< 0.2 . In addition , an significant increase in grain-growth-rate constant was observed as the temperature went up. The higher temperature, the faster growth. Grain growth activation energy was different in low-temperature and high-temperature fields. The activation energy was 77.42 kJ'mol"1 when the temperature was lower than 965 K, and became 524.36 kJ'mol"1 when the temperature was higher than 965 K. Yttria powders is highly dispersed whose agglomerates sized about 400 nm after being dispered in deionezed water.
机译:通过硝酸钇和草酸铵在水溶液中制备氧化钇的前体。通过热分析研究了前体的热解作用和yttra相变的表征。通过通过焙烧前体获得的粉末的X射线粉末衍射(XRD)结果研究了ytTria纳米粉粉末的晶粒生长动力学行为。通过SEM和激光粒度分析方法测量ytTria粉末和其谷物的聚集的图案。结果表明,立方晶体相钇可以通过在823k下的1小时内进行样品煅烧获得。当在从823k至1173k的温度条件下煅烧前体时,可以获得7nm〜16nm的yttraia谷物, N <0.2的晶粒生长指数。此外,随着温度上升,观察到晶粒生长速率常数显着增加。温度越高,增长越快。低温和高温场的晶粒生长激活能量不同。当温度低于965 k时,活化能量为77.42 kJ'mol“1,当温度高于965k时,ytTria粉末高度分散,在被置位后大约400nm的聚集体大小的蛋白质粉末高度分散在脱硫水中。

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